Identification and characterization of zebrafish ocular formation genes

Author:

Wang Han12,Kesinger Jason W.12,Zhou Qingchun12,Wren Jonathan D.12,Martin George12,Turner Sean12,Tang Yuhong12,Frank Mark Barton12,Centola Michael12

Affiliation:

1. Department of Zoology and Stephenson Research and Technology Center, University of Oklahoma, 101 David L. Boren Boulevard, Norman, OK 73019, USA.

2. Arthritis and Immunology Program and Microarray Research Facility, Oklahoma Medical Research Foundation, Oklahoma City, OK 73104, USA.

Abstract

To study genes that are specifically expressed in the eyes, we employed microarray and in situ hybridization analyses to identify and characterize differentially expressed ocular genes in eyeless masterblind (mbl−/−) zebrafish (Danio rerio). Among 70 differentially expressed genes in the mbl–/–mutant identified by microarray analysis, 8 down-regulated genes were characterized, including 4 eye-specific genes, opsin 1 short-wave-sensitive 1 (opn1sw1), crystallinßa1b (cryba1b), crystallinßa2b (cryba2b), and crystallinγ M2d3 (crygm2d3); 2 eye and brain genes, ATPase, H+transporting, lysosomal, V0subunit c (atp6v0c) and basic leucine zipper and W2 domains 1a (bzw1a); and 2 constitutive genes, heat shock protein 8 (hspa8) and ribosomal protein L7a (rpl7a). In situ hybridization experiments confirmed down-regulation of these 8 ocular formation genes in mbl–/–zebrafish and showed their ocular and dynamic temporal expression patterns during zebrafish early development. Further, an automated literature analysis of the 70 differentially expressed genes identified a sub-network of genes with known associations, either with each other or with ocular structures or development, and shows how this study contributes to the current body of knowledge.

Publisher

Canadian Science Publishing

Subject

Genetics,Molecular Biology,General Medicine,Biotechnology

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